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Polymer assemblies for controlled delivery of bioactive molecules from surfaces.

机译:用于控制从表面递送生物活性分子的聚合物组件。

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摘要

Localized delivery of bioactive compounds from surfaces of biomedical devices affords significant therapeutic benefits, and often relies on the capability of surface coatings to provide spatial and temporal control over release rate. The layer-by-layer technique presents a unique means to construct surface coatings that can conform to a variety of biomaterial surfaces and serve as matrices enabling controlled delivery of bioactive molecules from surfaces. The versatility of layer-by-layer assembly enables construction of surface coatings of diverse chemistry and internal architecture with controlled release properties. This review focuses on recent developments in constructing such layered matrices using linear polymers, polymer nanoparticles and block copolymer micelles, including micelles with stimuli-responsive cores, as film building blocks and in controlling release rate of therapeutics from these matrices via degradation, application of pH, ionic strength, temperature, light, electric field and chemical or biological stimuli. Challenges and opportunities associated with fabrication of stratified multilayer films capable of multi-stage delivery of multiple drugs are also discussed.
机译:从生物医学装置的表面局部递送生物活性化合物提供了显着的治疗益处,并且通常依赖于表面涂层提供释放速率的空间和时间控制的能力。逐层技术提供了一种独特的方法来构建可以适应各种生物材料表面的表面涂层,并可以用作可控制从表面传递生物活性分子的基质。逐层组装的多功能性可构建具有不同化学性质和内部结构且具有控释特性的表面涂层。这篇综述的重点是使用线性聚合物,聚合物纳米颗粒和嵌段共聚物胶束(包括具有刺激反应性核心的胶束)作为成膜材料构建此类分层基质的最新进展,以及通过降解,施加pH值来控制这些基质中治疗剂的释放速率,离子强度,温度,光,电场以及化学或生物刺激。还讨论了与能够多层输送多种药物的多层多层膜制造相关的挑战和机遇。

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